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April 27, 2026Canadian Journal of Plant Science0 citations

Surface-spring-applied compost replenishes plant available phosphorus, but crop uptake depends on soil moisture

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MCMichelle K. CarknerTFTandra D. FraserMEMartin H. Entz

Key Points

  • Evaluate the effect of surface-spring-applied compost on phosphorus availability and crop uptake in low soil test phosphorus conditions.
  • Conducted over three years in Manitoba, Canada with spring wheat (Triticum aestivum L.) under low STP conditions (3 ppm).
  • Applied compost during seeding and observed its effects on grain yield and P uptake under varying soil moisture.
  • Monitored mid-season soil test phosphorus levels and crop responses to compost application.
  • Compost application increased grain yield and phosphorus uptake in wet conditions, but not in drought scenarios.
  • Under drought, phosphorus uptake efficiency was significantly lower (34% vs 79% in wet conditions).
  • Compost increased mid-season soil test phosphorus, showing its effectiveness at replenishing soil phosphorus.

Abstract

Supplying phosphorus (P) to crops on organic farms with low soil test P (STP) remains a major challenge. This study evaluated surface- spring-applied compost effects on spring wheat (Triticum aestivum L.) grown under low STP (3 ppm) conditions over three years in Manitoba, Canada. Compost application increased grain yield and P uptake in wet but not in drought conditions, where plant-available P remained unattainable to the crop and drought reduced P uptake efficiency (34 vs 79%). Despite poor crop uptake under drought, spring-applied compost increased mid-season STP, demonstrating that surface-applied compost at time of seeding was effective at replenishing STP.

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Cite This Study

Carkner et al. (2026) studied this question.

synapsesocial.com/papers/69eefd9bfede9185760d44c8https://doi.org/10.1139/cjps-2025-0228
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